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Graphene-Carbon Nanotubes-Modified LiFePO_4 Cathode Materials for High-Performance Lithium-Ion Batteries

机译:石墨烯 - 碳纳米管改性的Lifepo_4用于高性能锂离子电池的阴极材料

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A nanocrystalline LiFePO_4/graphene-carbon nanotubes (LFP-G-CNT) composite has been successfully synthesized by a hydrothermal method followed by heat-treatment. The microstructure and morphology of the LFP-G-CNTs composite were comparatively investigated with LiFePO_4/graphene (LFP-G) and LiFePO_4/carbon nanotubes (LFP-CNT) by X-ray diffraction (XRD) and scanning electron microscopy (SEM). The LFP-G-CNTs nanoparticles were wrapped homogeneously and loosely within a 3D conducting network of graphene-carbon nanotubes. The conducting networks provided highly conductive pathways for electron transfer during the intercalation/deintercalation process, facilitated electron migration throughout the secondary particles, accelerated the penetration of the liquid electrolyte into the LFP-G-CNT composite in all directions and enhanced the diffusion of Li ions. The results indicate that the electrochemical activity of LFP-G-CNT composite may be enhanced significantly. The charge-discharge curves, cyclic voltammograms (CV) and electrochemical impedance spectroscopy (EIS) results demonstrate that LFP-G-CNT composite performes better than LFP-G and LFP-CNT composites. In particular, LFP-G-CNT composite with a low content of graphene and carbon nanotubes exhibites a high initial discharge capacity of 168.4 mAh g~(-1) at 0.1 C and 103.7 mAh g~(-1) at 40 C and an excellent cycling stability.
机译:通过水热法成功地合成了一种纳米晶LiFePO_4 /石墨烯 - 碳纳米管(LFP-G-CNT)复合材料,然后通过热处理成功地合成。通过X射线衍射(XRD)和扫描电子显微镜(SEM)用LiFePO_4 /石墨烯(LFP-G)和LiFePO_4 /碳纳米管(LFP-CNT)对LFP-G-CNTS复合材料的微观结构和形态进行了相对调查的。 LFP-G-CNT纳米颗粒在石墨烯 - 碳纳米管的3D导电网络内均匀地包裹并松散地包裹。导电网络为在嵌入/脱嵌工艺期间提供了高导电途径,在插入/脱嵌过程中,促进的电子迁移在整个次级颗粒中,加速了液体电解质在所有方向上进入LFP-G-CNT复合材料的渗透,并增强了Li离子的扩散。结果表明,LFP-G-CNT复合材料的电化学活性可以显着提高。电荷放电曲线,循环伏安图(CV)和电化学阻抗光谱(EIS)结果表明,LFP-G-CNT复合材料优于LFP-G和LFP-CNT复合材料。特别地,具有低含量的石墨烯和碳纳米管的LFP-G-CNT复合材料在0.1c和103.7mah g〜(-1)下展示了168.4mah g〜(-1)的高初始放电容量,在40℃下,优异的循环稳定性。

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